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Impacts into rotating targets: angular momentum draining and efficient formation of synthetic families

机译:对旋转目标的影响:角动量排放和合成族的有效形成

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About 10% of the observed asteroids have rotational periods lower than P = 3 h and seem to be relatively close to the spin barrier. Yet, the rotation has often been neglected in simulations of asteroid collisions. To determine the effect of rotation, we performed a large number of impact simulations with rotating targets. We developed a new unified smoothed particle hydrodynamics and N-body code with self-gravity, suitable for simulations of both fragmentation phase and gravitational reaccumulation. The code has been verified against previous ones, but we also tested new features, such as rotational stability, tensile stability, etc. Using the new code, we ran simulations with D _(pb)= 10 and 100 km monolithic targets and compared synthetic asteroid families created by these impacts with families corresponding to non-rotating targets. The rotation affects mostly cratering events at oblique impact angles. The total mass ejected by these collisions can be up to five times larger for rotating targets. We further computed the transfer of the angular momentum and determined conditions under which impacts accelerate or decelerate the target. While individual cratering collisions can cause both acceleration and deceleration, the deceleration prevails on average. Collisions thus cause a systematic spin-down of the asteroid population.
机译:大约有10%的观测到的小行星的旋转周期小于P = 3 h,并且似乎相对靠近自旋势垒。然而,在小行星碰撞的模拟中,旋转常常被忽略。为了确定旋转的效果,我们对旋转的目标执行了大量的冲击模拟。我们开发了一种新的统一的具有自重的平滑粒子流体动力学和N体代码,适用于模拟碎裂相和重力再累积。该代码已针对以前的代码进行了验证,但我们还测试了新功能,例如旋转稳定性,拉伸稳定性等。使用新代码,我们在D _(pb)= 10和100 km整体目标上进行了仿真,并比较了合成受这些影响而产生的小行星家族,其家族与非旋转目标相对应。旋转主要影响倾斜角度的缩孔事件。对于旋转的目标,这些碰撞所弹出的总质量可能高达五倍。我们进一步计算了角动量的传递以及确定的条件,在这些条件下冲击会加速或减速目标。虽然单个的缩孔碰撞会同时导致加速和减速,但减速平均占优势。碰撞因此导致小行星种群的系统性下降。

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